Genetic Variation of Adenoviruses Causing Conjunctivitis

Rizka Yunanda
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Abstract

Human adenovirus type 8 (HAdV-8) is the most common causative agent of a highly contagious eye disease known as epidemic keratoconjunctivitis (EKC). HAdV-8 strains have been classified into genome types HAdV-8A to 8K and HAdV/D1 to D12 according to restriction endonuclease analysis. This review focuses on the significance of HAdV-8 as an agent of EKC. Molecular analysis of HAdV-8 genome types HAdV-53 and HAdV-54 was performed to reveal potential genetic variation in the hexon and fiber, which might affect the antigenicity and tropism of the virus, respectively. On the basis of the published data, three patterns of HAdV-8 genome type distribution were observed worldwide: (1) genome types restricted to a microenvironment, (2) genome types distributed within a country, and (3) globally dispersed genome types. It showed that the HAdV-8 genome types were nearly identical to each other. HAdV-54 is very close to the HAdV-8P, B and E genomes, exceptin the hexon. In a restriction map, HAdV-8P, B, and E share a very high percentage of restriction sites with each other. Hypervariable regions (HVRs) of the hexon were conserved and were 100% identical among the genome types. The fiber knob of HAdV-8P, A, E, J and HAdV-53 were 100% identical. In phylogeny, HVRs of the hexon and fiber knob ofthe HAdV-8 genome types segregated into monophyletic clusters. Neutralizing antibodies against one genome type will provide protection against other genome types, and the selection of future vaccine strains would be simple due to the stable HVRs. Molecular analysis of whole genomes, particularly of the capsid proteins of the remaining genome types, would be useful to substantiate the observations.
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引起结膜炎的腺病毒的遗传变异
人类腺病毒8型(HAdV-8)是一种称为流行性角膜结膜炎(EKC)的高度传染性眼病的最常见病原体。根据限制性内切酶分析,将hav -8菌株分为hav - 8a ~ 8K和hav /D1 ~ D12基因组型。本文就HAdV-8作为EKC药物的意义进行综述。对HAdV-8基因组型HAdV-53和HAdV-54进行了分子分析,揭示了可能分别影响病毒抗原性和趋向性的六联体和纤维的潜在遗传变异。基于已发表的数据,在全球范围内观察到HAdV-8基因组型分布的三种模式:(1)局限于微环境的基因组型,(2)分布于一个国家的基因组型,(3)全球分散的基因组型。结果表明,HAdV-8基因组类型几乎完全相同。HAdV-54非常接近HAdV-8P, B和E基因组,除了六邻体。在限制性内切图谱中,HAdV-8P、B和E彼此共享非常高百分比的限制性内切位点。六邻体的高变区(HVRs)是保守的,在基因组类型中是100%相同的。HAdV-8P、A、E、J和HAdV-53的纤维旋钮100%相同。在系统发育上,HAdV-8基因组类型的六元体和纤维旋涡的hvr分离成单系集群。针对一种基因组类型的中和抗体将提供针对其他基因组类型的保护,并且由于稳定的hvr,未来疫苗株的选择将很简单。整个基因组的分子分析,特别是剩余基因组类型的衣壳蛋白,将有助于证实这些观察结果。
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